We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and Ni) using periodic density functional theory calculations and probe structure and activity toward CO oxidation for a subset of these systems experimentally. Pd and Pt can form stable negatively charged species upon binding to oxygen vacancies; the magnitude of the metal atom binding energy depends on the O vacancy formation energies of the supporting metal oxide and the lattice match between transition metal and support. The resulting oxide-supported single-atom systems catalyze CO oxidation by molecularly adsorbed O2 with intrinsic barriers as low as 36 kJ/mol for Pt/MnOx(001). This high activity stems from the single sites’ ability to stabi...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
SSCI-VIDE+ECI2D:ING+TLN:FMO:JRO:PAF:LPIInternational audienceNoble metals are used as catalysts for ...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
Supported metal single atoms have demonstrated excellent catalytic performance for many chemical tra...
International audienceThe interest in single-metal-atom dispersion in heterogeneous catalysis has ex...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
In the present study, we perform systematic density functional investigations on the single-atom Pt ...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
SSCI-VIDE+ECI2D:ING+TLN:FMO:JRO:PAF:LPIInternational audienceNoble metals are used as catalysts for ...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
Supported metal single atoms have demonstrated excellent catalytic performance for many chemical tra...
International audienceThe interest in single-metal-atom dispersion in heterogeneous catalysis has ex...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
In the present study, we perform systematic density functional investigations on the single-atom Pt ...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
SSCI-VIDE+ECI2D:ING+TLN:FMO:JRO:PAF:LPIInternational audienceNoble metals are used as catalysts for ...